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Targeting connexins with Gap27 during cold storage of the human donor uterus protects against cell death
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Blocking connexin channels improves embryo development of vitrified bovine blastocysts
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At the cross-point of connexins, calcium, and ATP : blocking hemichannels inhibits vasoconstriction of rat small mesenteric arteries
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Electroporation loading of membrane-impermeable molecules to investigate intra- and intercellular Ca2+ signaling
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Flash photolysis of caged IP3 to trigger intercellular Ca2+ waves
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Electroporation loading and flash photolysis to investigate intra- and intercellular Ca2+ signaling
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The dual face of connexin-based astroglial Ca2+ communication: a key player in brain physiology and a prime target in pathology
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Endothelial calcium dynamics, connexin channels and blood-brain barrier function
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Connexin targeting peptides as inhibitors of voltage- and intracellular Ca2+-triggered Cx43 hemichannel opening
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- PhD Thesis
- open access
Modulation of the vascular function by cannabinoids, calcitonin gene related peptide and connexin hemichannels
(2013) -
Inhibiting connexin channels protects against cryopreservation-induced cell death in human blood vessels
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IP₃, a small molecule with a powerful message
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Selective inhibition of Cx43 hemichannels by Gap19 and its impact on myocardial ischemia/reperfusion injury
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Connexin mimetic peptides inhibit Cx43 hemichannel opening triggered by voltage and intracellular Ca2+ elevation
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Paracrine signaling through plasma membrane hemichannels
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Low extracellular Ca2+ conditions induce an increase in brain endothelial permeability that involves intercellular Ca2+ waves
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Influence of CGRP and methanandamide on membrane potential, K+ currents and calcium oscillations in mesenteric artery smooth muscle
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Transfer of IP3 through gap junctions is critical, but not sufficient, for the spread of apoptosis
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Connexin 43 hemichannels contribute to cytoplasmic Ca2+ oscillations by providing a bimodal Ca2+-dependent Ca2+ entry pathway
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Influence of methanandamide and CGRP on potassium currents in smooth muscle cells of small mesenteric arteries